Ripka J, Adamany A, Stanley P
Arch Biochem Biophys. 1986 Sep;249(2):533-45. doi: 10.1016/0003-9861(86)90031-7.
A biochemical basis for the pea and lentil lectin resistance of two Chinese hamster ovary (CHO) cell mutants, Lec13 and Lec13A, was investigated. Studies of the G glycopeptides of vesicular stomatitis virus grown in the mutants indicated that Lec13 cells essentially lack the ability to add fucose to complex carbohydrates while Lec13A cells synthesize significant proportions of fucosylated, complex moieties. However, both mutants were known to be reverted to lectin sensitivity by growth in L-fucose, making them similar to the mouse lymphoma mutant, PLR1.3, which is defective in the conversion of GDP-mannose to GPD-fucose [M. L. Reitman, I. S. Trowbridge, and S. Kornfeld (1980) J. Biol. Chem. 255, 9900-9906]. Optimal conditions for the production of GDP-fucose from GDP-mannose by CHO cytosol were found to occur at pH 8 in the presence of 7.5 microM GDP-mannose, 15 mM Mg2+, 0.2 mM NAD+, 0.2 mM NADPH, 10 mM niacinamide, 5 mM ATP, and 50 mM Tris-HCl. Under these conditions, Lec13 cytosol produced no detectable GDP-fucose nor GDP-sugar intermediates while Lec13A cytosol produced significant quantities of both. Mixing experiments with Lec13 cytosol identified the first enzyme of the conversion pathway (GDP-mannose 4,6-dehydratase, EC 4.2.1.47) as the site of the block. In addition to being markedly reduced, the Lec13A 4,6-dehydratase activity was relatively insensitive to changes in pH in comparison to the activity in parental cytosol, suggesting that Lec13A cells might possess a structurally altered GDP-mannose 4,6-dehydratase enzyme.
研究了两个中国仓鼠卵巢(CHO)细胞突变体Lec13和Lec13A对豌豆和扁豆凝集素抗性的生化基础。对在突变体中生长的水疱性口炎病毒的G糖肽的研究表明,Lec13细胞基本上缺乏向复合碳水化合物添加岩藻糖的能力,而Lec13A细胞合成了相当比例的岩藻糖基化复合部分。然而,已知这两种突变体在L-岩藻糖中生长时会恢复对凝集素的敏感性,这使它们类似于小鼠淋巴瘤突变体PLR1.3,后者在GDP-甘露糖向GPD-岩藻糖的转化中存在缺陷[M. L. 赖特曼、I. S. 特罗布里奇和S. 科恩菲尔德(1980年)《生物化学杂志》255卷,9900 - 9906页]。发现CHO细胞溶质由GDP-甘露糖产生GDP-岩藻糖的最佳条件是在pH 8时,存在7.5微摩尔GDP-甘露糖、15毫摩尔镁离子、0.2毫摩尔烟酰胺腺嘌呤二核苷酸、0.2毫摩尔烟酰胺腺嘌呤二核苷酸磷酸、10毫摩尔烟酰胺、5毫摩尔三磷酸腺苷和50毫摩尔三羟甲基氨基甲烷盐酸盐。在这些条件下,Lec13细胞溶质未产生可检测到的GDP-岩藻糖和GDP-糖中间体,而Lec13A细胞溶质产生了大量的这两者。用Lec13细胞溶质进行的混合实验确定了转化途径的第一种酶(GDP-甘露糖4,6-脱水酶,EC 4.2.1.47)为阻断位点。除了明显降低外,与亲本细胞溶质中的活性相比,Lec13A 4,6-脱水酶活性对pH变化相对不敏感,这表明Lec13A细胞可能拥有结构改变的GDP-甘露糖4,6-脱水酶。